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Efficiency in Cow-Calf Systems With Different Ages of Cow Culling

机译:牛小牛系统的效率,具有不同年龄的牛剔除

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The bioeconomic efficiency of cow-calf systems was compared by a deterministic dynamic simulation. The simulation model considered stable cow-calf systems differentiated by the maximum age for culling cows, lifetime, culled at four years old; five years old ; six years old; seven years old; eight years old ; nine years old ; ten years old; eleven years old ; twelve years old and thirteen years old. The necessary supply of metabolizable energy for the herd was established as natural grasslands, cultivated pasture in the winter/spring, and pre-dried pasture produced by the system. The biological efficiency of the systems was considered the ratio between the production of total live weight and the metabolizable energy consumed over one production cycle. Economic efficiency was determined by the ratio between gross margin and production area and the ratio between gross margin and number of cows . Bioeconomic efficiency was determined by a simple linear regression between biological efficiency , economic efficiency per area, and economic efficiency per cow. The efficiency of the animal unit, considering biological efficiency and economic efficiency per area were better in the system that culled cows at four years old, while economic efficiency per cow was better in the system that culled cows at thirteen years old. In determining the bioeconomic efficiency of the systems, the best results were found in the system that culled cows at six years old, which suggests that the best efficiency of a cow-calf herd is reached when the adult age and mature weight of the cow are reached, and there is no more energy used for growing. The results indicate that stable cow-calf herds express their best biological efficiency and economic efficiency per area when the cow culling age is lower. However, economic efficiency per cow depends on cows that remain in the herd as long as possible. The culling age of cow that balances these biological and economic indicators is reached around five and half years.
机译:通过确定性的动态模拟比较了牛犊系统的生物经济效率。仿真模型认为,稳定的牛犊系统,差异化的剔除奶牛,寿命,终身,四岁;五岁 ;六岁;七岁;八岁;九岁 ;十岁;十一岁 ;十二岁和十三岁。牛群的必要供应供应是自然草地,冬季/弹簧的栽培牧场,以及系统生产的预干牧场。系统的生物学效率被认为是生产总体重的生产与一个生产周期消耗的代谢能量之间的比率。经济效率取决于毛利率和生产面积之间的比率以及毛利率和奶牛数量之间的比例。生物经济效率是通过生物效率,经济效率的简单线性回归来确定每头牛的经济效率。考虑到每种区域的生物效率和经济效率的系统效率在4岁的系统中更好,而每奶牛的经济效率在十三岁时的母牛的经济效率更好。在确定系统的生物经济效率时,在六岁的奶牛中发现了最佳结果,这表明当成年人年龄和奶牛的成熟重量时,达到了牛犊群的最佳效率到达,没有更多的能量用于生长。结果表明,当牛剔除年龄较低时,稳定的牛犊群表达了每个区域的最佳生物效率和经济效率。然而,每头牛的经济效率取决于尽可能长的牛群留在牛群中。母牛的剔除年龄,平衡这些生物和经济指标左右五年半。

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